SAE J2546 Model Specification Process Standard

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Product Code:SAE J2546
Title:Model Specification Process Standard
Issuing Committee:Electronic Design Automation Standards Committee
Scope:The modeling requirements listed in this document provide guidelines for specifying: Analysis requirements Computer-Aided Engineering (CAE) simulator Model fidelity System assumptions Model architecture Validation requirements Deliverablesfor electrical/electronic components and the integral interfacing systems (mechanical, thermal, hydraulic) associated with these components.The simulation models are primarily intended to facilitate functional specification and operational evaluation between component and system manufacturers, and are not intended to otherwise constrain or restrict the use of CAE simulation tools for automotive design, analysis and validation.or automotive electrical/electronic and mechatronic components. These requirements include functional specifications, their intended applications and the deliverables.Model DevelopmentThis standard provides a guide for writing a simulation model specification by the end user, known as the Requester, and is detailed in the Model Specification Process shown in Figure 1.The general process steps are:--The Requester requires a component model to perform system simulations and submits the component specification based on this standard to the component supplier, known as the Producer.--The Producer receives the model specification and, possessing detailed knowledge of their component, develops a specific component model. This model can be developed from the ground up or it can be developed from generic component models that are assembled to provide the proper performance. These generic component models can be developed by the CAE simulator supplier or by other component manufacturers.--The Producer validates the specific model against the Model Specification and delivers the model to the Requester.--The Requester receives the requested model and performs the necessary system simulations.Simulation Model Development under the Model Specification Process Standard This process has the benefits of having a common vocabulary and standard interpretation of what is being requested and what will be delivered. Essentially, this Standard improves the communication between the system integrators and the component manufacturers in the automotive industry and will enable the development of automotive systems that represent high customer value.This document will focus on developing the model requirement guidelines (highlighted oval in Figure 1) and this will allow the development of the SAE Commodity Model Standards.ApplicationThis standard provides a guide for the development of model request specifications on a commodity-by-commodity basis.This specification describes the fundamentals of commodity behavior and contains a general request form. This request form in turn contains pre-defined checklist table entries for feature/level options as well as placeholders for free-form text descriptions, graphics and other request-dependent information. A model Requester can then fill out a blank form for a given commodity to specify the level of detail and desired functionality that is expected for a generic model of a particular device. A model Requester can also request characterization of an existing generic model to make a model of a specific component or part number.Hierarchy of commodity model specifications in relation to defined standards.
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【英文标准名称】:Aircraftoxygensystemsandequipment-Testingofequipmentandsystems
【原文标准名称】:飞行器供氧系统和设备.设备和系统的试验
【标准号】:BS4N100-3-1999
【标准状态】:现行
【国别】:英国
【发布日期】:1999-10-15
【实施或试行日期】:1999-10-15
【发布单位】:英国标准学会(BSI)
【起草单位】:BSI
【标准类型】:()
【标准水平】:()
【中文主题词】:液化气;呼吸装置;航空运输工程;气体;氧;飞行器部件;漏泄试验;煤气;试验设备;试验条件;压力试验;氧气面罩;水力试验;设计
【英文主题词】:Airtransportengineering;Aircraftcomponents;Breathingapparatus;Design;Gases;Hydraulictests;Leaktests;Liquefiedgases;Oxygen;Oxygenmasks;Pressuretesting;Testequipment;Testingconditions
【摘要】:ThisPartofBSN100providesguidanceonthemethodsfortestingequipmentandsystemsforusewithoxygen.Itspecifiesthedesignoftestrigsandtestapparatusanditdescribespressuretestingandleakagetestingofequipment.
【中国标准分类号】:V44
【国际标准分类号】:49_090
【页数】:10P;A4
【正文语种】:英语


基本信息
标准名称:声学 建筑和建筑构件隔声测量 第3部分:建筑构件空气声隔声的实验室测量
英文名称:Accoustics—Measurement of sound insulation in buildings and of building elements—Part 3:Laboratory measurements of airborne sound insulation of building elements—Part 3:Laboratory measurements of airborne sound insulation of building elements
中标分类: 综合 >> 计量 >> 声学计量
ICS分类: 建筑材料和建筑物 >> 建筑物的防护 >> 防水
发布部门:中华人民共和国国家质量监督检验检疫总局 中国国家标准化管理委员会
发布日期:2005-09-09
实施日期:2006-04-01
首发日期:2005-09-09
作废日期:1900-01-01
主管部门:中国科学院
提出单位:中国科学院
归口单位:全国声学标准化技术委员会
起草单位:同济大学
起草人:王季卿、谭华、吕亚东
出版社:中国标准出版社
出版日期:2006-04-01
页数:16开, 页数:22, 字数:41千字
计划单号:20030835-T-491
书号:155066.1-26914
适用范围

本部分规定了一种测量建筑构件空气声隔声的实验室方法。这里的建筑构件主要包括墙、楼板、门、窗、建筑外墙构件和建筑外墙等,但不包括小尺寸构件(它们的测量方法将在GB/T 19889.10中规定)。测量所得到的结果可用来设计具有良好隔声性能的建筑构件,也可以用来进行建筑构件隔声性能的比较,还可以根据建筑构件的隔声性能对其进行分级。实验室测量所用测试设施的侧向传声已受抑制。如果没有把现场的其他因素(特别是侧向传声和损失因数)对隔声的影响估计在内,那么采用本部分测试方法测量的数据,就不能直接应用于现常

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所属分类: 综合 计量 声学计量 建筑材料和建筑物 建筑物的防护 防水